Effects of Hydrogen Sulphide on the Isolated Perfused Rat Heart

Objectives: Hydrogen sulphide has been identified as a gas signalling molecule in the body, and has previously been shown to have vasorelaxant properties. The aim of the study was to investigate the effects of sodium hydrosulphide (NaHS), a hydrogen sulphide donor, on heart rate (HR), left ventricul...

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Main Authors: Afthab Hussain, Helen Maddock, Hajar Al-Rajaibi, Ray J Carson
Format: Article
Language:English
Published: Sultan Qaboos University 2011-08-01
Series:Sultan Qaboos University Medical Journal
Subjects:
Online Access:https://journals.squ.edu.om/index.php/squmj/article/view/1577
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spelling doaj-12617390aeac4531b676df7a7fffcf872020-11-25T03:25:58ZengSultan Qaboos UniversitySultan Qaboos University Medical Journal 2075-051X2075-05282011-08-011122362431503Effects of Hydrogen Sulphide on the Isolated Perfused Rat HeartAfthab Hussain0Helen Maddock1Hajar Al-Rajaibi2Ray J Carson3Biomolecular Sciences, Faculty of Health & Life Sciences, Coventry University, Coventry, UKBiomolecular Sciences, Faculty of Health & Life Sciences, Coventry University, Coventry, UKDepartment of Physiology, Sultan Qaboos University Hospital, Muscat, OmanDept. of Medical & Social Care Education, Leicester Medical School, University of Leicester, Leicester, UK.Objectives: Hydrogen sulphide has been identified as a gas signalling molecule in the body, and has previously been shown to have vasorelaxant properties. The aim of the study was to investigate the effects of sodium hydrosulphide (NaHS), a hydrogen sulphide donor, on heart rate (HR), left ventricular developed pressure (LVDP) and coronary flow (CF) in the isolated perfused rat heart. Methods: A Langendorff isolated heart preparation was used to investigate the effect of a dose range of sodium hydrosulphide, in the presence and absence of inhibitors, on heart rate, left ventricular developed pressure and coronary flow. Results: Sodium hydrosulphide caused a significant decrease in heart rate at a concentration of 10-3 M (P <0.001). This decrease was partially inhibited by glibenclamide, a KATP channel blocker (P <0.05); L-NAME, a nitric oxide synthase inhibitor (P <0.001), and methylene blue (P <0.001), but not by H-89, a protein kinase A inhibitor. Sodium hydrosulphide significantly increased coronary flow at concentrations of 10-4 – 10-3M (P <0.05). This response was significantly increased in the presence of L-NAME (P <0.001) and methylene blue (P <0.001), whereas H-89 inhibited the increase in coronary flow due to sodium hydrosulphide (P <0.001). Sodium hydrosulphide significantly decreased LVDP at all concentrations (P <0.001). In the presence of glibenclamide and H-89, the time period of the decrease in LVDP due to sodium hydrosulphide was extended (P <0.001), whereas methylene blue and L-NAME caused a significant reduction in the response to sodium hydrosulphide (P <0.05, P <0.01 respectively). Conclusion: Sodium hydrosulphide reduced heart rate and LVDP, and increased coronary flow in the isolated perfused rat heart; however, the mechanisms of action could not be fully elucidated.https://journals.squ.edu.om/index.php/squmj/article/view/1577hydrogen sulphideheartlangendorffh2s gasotransmittervasorelaxation
collection DOAJ
language English
format Article
sources DOAJ
author Afthab Hussain
Helen Maddock
Hajar Al-Rajaibi
Ray J Carson
spellingShingle Afthab Hussain
Helen Maddock
Hajar Al-Rajaibi
Ray J Carson
Effects of Hydrogen Sulphide on the Isolated Perfused Rat Heart
Sultan Qaboos University Medical Journal
hydrogen sulphide
heart
langendorff
h2s gasotransmitter
vasorelaxation
author_facet Afthab Hussain
Helen Maddock
Hajar Al-Rajaibi
Ray J Carson
author_sort Afthab Hussain
title Effects of Hydrogen Sulphide on the Isolated Perfused Rat Heart
title_short Effects of Hydrogen Sulphide on the Isolated Perfused Rat Heart
title_full Effects of Hydrogen Sulphide on the Isolated Perfused Rat Heart
title_fullStr Effects of Hydrogen Sulphide on the Isolated Perfused Rat Heart
title_full_unstemmed Effects of Hydrogen Sulphide on the Isolated Perfused Rat Heart
title_sort effects of hydrogen sulphide on the isolated perfused rat heart
publisher Sultan Qaboos University
series Sultan Qaboos University Medical Journal
issn 2075-051X
2075-0528
publishDate 2011-08-01
description Objectives: Hydrogen sulphide has been identified as a gas signalling molecule in the body, and has previously been shown to have vasorelaxant properties. The aim of the study was to investigate the effects of sodium hydrosulphide (NaHS), a hydrogen sulphide donor, on heart rate (HR), left ventricular developed pressure (LVDP) and coronary flow (CF) in the isolated perfused rat heart. Methods: A Langendorff isolated heart preparation was used to investigate the effect of a dose range of sodium hydrosulphide, in the presence and absence of inhibitors, on heart rate, left ventricular developed pressure and coronary flow. Results: Sodium hydrosulphide caused a significant decrease in heart rate at a concentration of 10-3 M (P <0.001). This decrease was partially inhibited by glibenclamide, a KATP channel blocker (P <0.05); L-NAME, a nitric oxide synthase inhibitor (P <0.001), and methylene blue (P <0.001), but not by H-89, a protein kinase A inhibitor. Sodium hydrosulphide significantly increased coronary flow at concentrations of 10-4 – 10-3M (P <0.05). This response was significantly increased in the presence of L-NAME (P <0.001) and methylene blue (P <0.001), whereas H-89 inhibited the increase in coronary flow due to sodium hydrosulphide (P <0.001). Sodium hydrosulphide significantly decreased LVDP at all concentrations (P <0.001). In the presence of glibenclamide and H-89, the time period of the decrease in LVDP due to sodium hydrosulphide was extended (P <0.001), whereas methylene blue and L-NAME caused a significant reduction in the response to sodium hydrosulphide (P <0.05, P <0.01 respectively). Conclusion: Sodium hydrosulphide reduced heart rate and LVDP, and increased coronary flow in the isolated perfused rat heart; however, the mechanisms of action could not be fully elucidated.
topic hydrogen sulphide
heart
langendorff
h2s gasotransmitter
vasorelaxation
url https://journals.squ.edu.om/index.php/squmj/article/view/1577
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